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Lig3-dependent rescue of mouse viability and DNA double-strand break repair by catalytically inactive Lig4
David Medina-Suárez1, Li Han1, Sandra O'Reilly2
1Department of Microbiology, Genetics and Immunology, Michigan State University, 567 Wilson Rd., East Lansing, MI 48824, USA.
Abstract:
Recent studies have revealed a structural role for DNA ligase 4 (Lig4) in the maintenance of a repair complex during non-homologous end joining (NHEJ) of DNA double-strand breaks. In cultured cell lines, catalytically inactive Lig4 can partially alleviate the severe DNA repair phenotypes observed in cells lacking Lig4. To study the structural role of Lig4 in vivo, a mouse strain harboring a point mutation to Lig4's catalytic site was generated. In contrast to the ablation of Lig4, catalytically inactive Lig4 mice are born alive. These mice display marked growth retardation and have clear deficits in lymphocyte development. We considered that the milder phenotype results from inactive Lig4 help to recruit another ligase to the repair complex. We next generated a mouse strain deficient for nuclear Lig3. Nuclear Lig3-deficient mice are moderately smaller and have elevated incidences of cerebral ventricle dilation but otherwise appear normal. Strikingly, in experiments crossing these two strains, mice lacking nuclear Lig3 and expressing inactive Lig4 were not obtained. Timed mating revealed that fetuses harboring both mutations underwent resorption, establishing an embryonic lethal genetic interaction. These data suggest that Lig3 is recruited to NHEJ complexes to facilitate end joining in the presence (but not activity) of Lig4.
Insights
Inactive DNA ligase 4 (Lig4) partially rescues DNA repair defects, but its combination with nuclear Lig3 deficiency causes embryonic lethality, revealing Lig3
Area of Science:
- Molecular Biology
- Genetics
- Biochemistry
Background:
- DNA ligase 4 (Lig4) plays a structural role in DNA double-strand break repair via non-homologous end joining (NHEJ).
- Catalytically inactive Lig4 can partially rescue DNA repair defects in cell lines lacking functional Lig4.
Purpose of the Study:
- To investigate the in vivo structural role of Lig4 in DNA repair.
- To determine the functional relationship between Lig4 and nuclear Lig3 in NHEJ.
Main Methods:
- Generated a mouse model with a catalytically inactive Lig4 mutation.
- Created a mouse model deficient for nuclear Lig3.
- Interbred these mouse models to assess genetic interactions.
Main Results:
- Mice with inactive Lig4 exhibited growth retardation and lymphocyte deficits but survived.
- Mice deficient for nuclear Lig3 showed moderate growth reduction and brain ventricle dilation.
- Double mutant mice (inactive Lig4 and null Lig3) resulted in embryonic lethality due to fetal resorption.
Conclusions:
- Lig4's structural role is crucial for NHEJ, independent of its catalytic activity.
- Nuclear Lig3 is essential for embryonic development, likely functioning in NHEJ.
- Lig3 is recruited to NHEJ complexes, facilitating DNA repair in the presence of Lig4's structure but not its activity.
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